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Ionic conductivity, lithium insertion and extraction of lanthanum lithium titanate

机译:离子电导率,锂的嵌入和钛酸镧锂的萃取

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The lithium ionic conductivity and electrochemical stability of perovskite La2/3-xLi3xTiO3 (LLTO) have been determined with AC impedance spectroscopy, cyclic voltammetry and galvanostatic cycling. Ionic conductivity of La0.55Li0.35TiO3 and La0.57Li0.29TiO3 pellets sintered from four different powders was measured in the temperature range from 30 to 110 degreesC. Bulk conductivity was found to be closely related to the calcination temperature of the powders. Pellets from 1100 degreesC-calcined powders had higher bulk conductivity than from 1200 degreesC-calcined powders. The grain-boundary conductivity was mainly determined by the sample composition. The activation energies were 0.14-0.18 eV for bulk conduction and 0.41-0.43 eV for grain-boundary conduction. Lithium was intercalated into LLTO below about 1.8 V vs. Li. With addition of acetylene black, about 0.48 Li was reversibly inserted into and extracted out of La0.55Li0.35TiO3. A phase transition is proposed to take place during the lithium insertion. Published by Elsevier Science B.V. [References: 19]
机译:钙钛矿型La2 / 3-xLi3xTiO3(LLTO)的锂离子电导率和电化学稳定性已通过交流阻抗谱,循环伏安法和恒电流循环法测定。在30至110℃的温度范围内,测量了由四种不同粉末烧结而成的La0.55Li0.35TiO3和La0.57Li0.29TiO3颗粒的离子电导率。发现体积电导率与粉末的煅烧温度密切相关。来自1100℃煅烧粉末的粒料具有比来自1200℃煅烧粉末的粒料更高的体积电导率。晶界电导率主要由样品组成决定。对于本体传导,活化能为0.14-0.18eV,对于晶界传导,活化能为0.41-0.43eV。相对于锂,锂被插入到低于约1.8 V的LLTO中。添加乙炔黑后,可逆地将约0.48 Li插入La0.55Li0.35TiO3中并从中萃取出来。建议在锂的插入过程中发生相变。由Elsevier Science B.V.发布[参考文献:19]

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